利用水下结构作为捕波区的新方法

IF 3.4 2区 工程技术 Q1 ENGINEERING, MECHANICAL Journal of Fluids and Structures Pub Date : 2024-08-05 DOI:10.1016/j.jfluidstructs.2024.104169
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引用次数: 0

摘要

波浪夹带是在某些入射波情况下出现的一种流体力学现象。本文以势能流理论为基础,探讨了波浪与拟建水下结构相互作用的现象。研究的重点是拟建结构区域发生波浪捕获的频率。所提出的频率与该区域明显较高的速度势能值相对应。我们将这一区域称为捕波区。在散射问题中,我们还研究了反射系数与浸没深度、水深、结构长度和刚度以及其他物理参数的关系。还提出了零传输和捕获频率下结构参数的最佳值。研究结果表明,对于一个合适的结构,我们可以在一定的频率范围内将这种几何形状用作具有全反射功能的防波堤,在某些频率下还可用于捕获波浪。
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A novel approach for using submerged structure as wave-trapping zone

Entrapment of waves is a hydrodynamic phenomenon that occurs under certain incident wave circumstances. The present article, based on potential flow theory, deals with the phenomena of waves interacting with a proposed submerged structure. Focus of this study is on the frequencies for which the wave trapping occurs in the region of the proposed structure. The frequencies presented correspond to significantly higher values of velocity potential in the region. We refer this region as a wave-trapping zone. In scattering problem the reflection coefficient is also investigated with respect to submergence depth, water depth, length and rigidity of the structure and other physical parameters. The optimum values of the structural parameters are also proposed for zero transmission and trapping frequencies. The investigation establishes that for a suitable configuration we can achieve a range of frequencies for which such a geometry can be used as breakwater with total reflection and at certain frequencies also for trapping of waves.

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来源期刊
Journal of Fluids and Structures
Journal of Fluids and Structures 工程技术-工程:机械
CiteScore
6.90
自引率
8.30%
发文量
173
审稿时长
65 days
期刊介绍: The Journal of Fluids and Structures serves as a focal point and a forum for the exchange of ideas, for the many kinds of specialists and practitioners concerned with fluid–structure interactions and the dynamics of systems related thereto, in any field. One of its aims is to foster the cross–fertilization of ideas, methods and techniques in the various disciplines involved. The journal publishes papers that present original and significant contributions on all aspects of the mechanical interactions between fluids and solids, regardless of scale.
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